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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Non-Fermi liquids at finite temperature: Normal-state and infrared singularities
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Non-Fermi liquids at finite temperature: Normal-state and infrared singularities

机译:有限温度下的非费米液体:常态和红外奇点

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We analyze quantum criticality at finite temperature for a class of non-Fermi liquids with massless bosons. Finite temperature gives rise to new infrared singularities that invalidate standard perturbative treatments. We show how such divergences are resolved at a nonperturbative level, and obtain the resulting fermion self-energy. This leads to a new "thermal" non-Fermi liquid regime that extends over a wide range of frequencies, and which violates finite temperature scaling laws near quantum critical points. We analyze the resulting quantum critical region and properties of the retarded Green's function. More generally, such effects dominate in the nearly static limit and are expected to have a nontrivial impact on superconductivity and transport.
机译:我们分析了一类具有无质量玻色子的非费米液体在有限温度下的量子临界性。有限的温度会引起新的红外奇点,使标准的微扰治疗无效。我们展示了如何在非扰动水平上解决这种分歧,并获得了产生的费米子自能。这导致了一种新的“热”非费米液体状态,该状态在很宽的频率范围内扩展,并且违反了量子临界点附近的有限温度定律。我们分析了由此产生的量子临界区和延迟格林函数的性质。更一般地,这种影响在几乎静态的极限中占主导地位,并有望对超导性和传输产生不小的影响。

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